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Kinetic arrest of direct and reverse martensitic transformation and exchange bias effect in Mn_(49.5)Ni_(40.4)In_(10.1) melt spun ribbons

机译:在MN_(49.5)Ni_(40.4)中的直接和反向马氏体转换和交换偏置效应的动力学阻滞和交换偏置效应IN_(10.1)熔化纺丝带

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Phase coexistence phenomena related to direct and reverse martensitic transformation have been studied in melt spun ribbons of the magnetic shape memory alloy Mn_(49.5)Ni_(40.4)In_(10.1). For magnetic fields above 10 kOe martensitic transformation undergoes a progressive kinetic arrest. The metastable character of the field-cooled frozen fraction of austenite into martensite was verified. An atypical incomplete reverse martensitic transformation of thermal origin was also observed. The zero-field cooled thermomagnetization curve measured at 50 kOe shows a decrease below 30 K that was accompanied by the occurrence of exchange bias effect suggesting the strengthening of antiferromagnetic interactions in martensite in such temperature range.
机译:在磁性形状记忆合金MN_(49.5)Ni_(40.4)IN_(10.1)的熔体纺丝带中研究了与直接和反向马氏体转化相关的相位共存现象。对于高于10 koe马氏体转化的磁场经历了进步的动力骤动。验证了奥氏体的现场冷冻冷冻级数的亚稳态特性。还观察到热源的非典型不完整的反向马氏体转化。在50只koe测量的零场冷却热磁化曲线显示出低于30k的降低,其伴随着交换偏置效应的发生,这表明在这种温度范围内的马氏体中的反铁磁性相互作用的强化。

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